Your search keywords rules Total 238 Column

RULES FOR MATERIALS AND WELDING 2025

05/30.2025


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RULES FOR MATERIALS AND WELDING 2025 AMENDMENTS

04/14.2025


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RULES FOR INTELLIGENT SHIPS 2025

03/31.2025


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Rules For Construction and Equipment of ships carrying liquefied gases in bulk

03/30.2016

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Rules for Construction and Equipment of Ships Carrying Dangerous Liquid Chemicals in Bulk,RCN No.1,2025

01/15.2025


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2025 Amendments to Rules for Construction and Equipment of Ships Carrying Liquefied Gases in Bulk

12/27.2024


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Rules for Classification of Sea-Going Steel Ships

04/01.2016


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RULES FOR CLASSIFICATION OF SEA-GOING STEEL SHIPS((R001CN01-2025)

11/22.2024


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Rules for Materials and Welding (R002CN01-2025)

11/22.2024


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Rules for Construction of Ocean-Going Steel Fishing Vessels

06/30.2020

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Rules for Construction of Ocean-going Steel Fishing Vessels (2024 RCN No.2)

11/12.2024


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CCS Rule Change Notice for Rules Classification of Mobile Offshore Units(RCN No.1,2024)

09/30.2024


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Rules For Classification of Sea-going Steel Ships(R001CN03-2024)

07/09.2024


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RULES FOR SHIPS USING NATURAL GAS FUELS 2024

07/01.2024


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RULES FOR CONSTRUCTION OF SEA-GOING SHIPS ENGAGED ON DOMESTIC VOYAGES 2024

06/12.2024


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RULES FOR CONSTRUCTION OF SEA-GOING SHIPS ENGAGED ON DOMESTIC VOYAGES

07/01.2022


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RULES FOR CLASSIFICATION OF SEA-GOING STEEL SHIPS 2024

06/12.2024


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Rules for Materials and Welding

04/01.2016


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Rules for Materials and Welding 2024

06/12.2024


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RULES FOR CONSTRUCTION OF SEA-GOING SHIPS ENGAGED ON DOMESTIC VOYAGES 2024 AMENDMENTS

06/04.2024


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Rules & Guidelines

01/01.1970

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CCS Rules

01/01.1970

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HCSR

01/01.1970

1. Introduction COMPASS HCSR software , developed by CCS, is based on IACS CSR BC & OT(Common Structural Rules for Bulk Carriers and Oil Tankers),which evaluates prescriptive requirement and direct strength analysis of hull structure. It is constituted by two modules, one is prescriptive requirement check - structure design program (SDP), and the other is direct strength analysis (DSA).COMPASS HCSR software  has the independent intellectual property rights owned by CCS, and is updated with IACS HCSR progress. The software will provide strong support to the application of HCSR in China ship industry.   COMPASS HCSR(SDP BC)   COMPASS HCSR(SDP OT) COMPASS HCSR(DSA) Bulk Carrier                                       Tanker   2.HCSR SDP——Prescriptive rule check Features: 1 complete coverage of CSR BC & OT prescriptive requirements: calculation covering the whole ship. Checking hull girder yielding, ultimate and residual strength, scantling requirement, buckling strength, fatigue strength, bow impact, bottom slamming, tank sloshing, bulk carrier grab, steel coil and other special requirements.   Calculation covering the whole ship hull girder yielding, ultimate and residual strength, scantling requirements, buckling strength, fatigue strength Compartment definition   bow impact                          bottom slamming   Sloshing requirement     BC GRAB requirement                      BC Steel Coil requirement   2 fast and accurate: fast calculation speed, and accurate results ensured by comprehensive tests. 3 easy modeling: parametric modeling is easy and quick. Transverse section and bulkhead can be copied. With import and export of important data, data reusability is enhanced. Parametric modeling Transverse section and bulkhead duplication      Data import and export   4 Results easy to view: To meet the needs of different users, providing multi forms of results display including formal and detail reports, fringe display, detailed results interface.           The formal output report              fringe display of the results   Detailed results interface                             Detailed results output 5 safe and reliable data management: based on the Microsoft Access database. 3.HCSR-DSA – Direct Strength Analysis Features: 1 Complete coverage of CSR BC & OT Direct Strength Analysis requirements, Including yielding, buckling and fatigue assessment of the entire cargo area.          The entire cargo area  Three cargo hold FE model                    Foremost cargo hold  Aftmost cargo hold   2 The accurate and trusty analysis results. 3 Based on MSC.Patran. 4 Loads and loading conditions are applied automatically according to CSR BC & OT requirements. 5 More easy and flexible loads define mode.     Compartment definition     Loading Pattern                       Load case definition     Frame definition                          Hull girder loads adjustment Hull girder shear force adjustment Hull girder bending moment adjustment 6.Automatic boundary constraints 7.Automatic corrosion deduction   8.Post-processing tools: yielding, buckling and fatigue assessment, automatic fine mesh. Yielding assessment Yielding assessment  Fatigue assessment Automatic fine mesh 4.Prospect: IACS CSR BC & OT, based on CSR BC(Common structure rules for bulk carriers) and CSR OT(Common structure rules for oil tanks), is a new version of common structure rules for BC and OT that is developed to meet the IMO GBS requirements. Compared with CSR, CSR BC & OT focuses on the computational analysis and is more comprehensive and reasonable. In this situation, ship design, research, plan approval and inspection will be more dependent on CSR BC & OT software. The COMPASS-HCSR software is developed by China Classification Society and has independent intellectual property rights, which completely fulfills the IACS CSR BC & OT rules requirements. It is designed in accordance with the industry tradition which achieves high level in practicability, usability, flexibility, and efficiency. The analysis results are accurate and reliable. With the application of IACS CSR BC & OT, COMPASS HCSR software will strongly support and be wildly used in the ship design,ship development, plan approval and inspection.    
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CSR-SDP(TANKER)

01/01.1970

 COMPASS-STRUCTURE-CSR-SDP (for OT): Structural design program for oil tankers (SDP_OT) is developed by CCS in accordance with the latest version of Common Structural Rules for Oil Tankers (CSR OT). The program is mainly used for structural design and check for the full length of the classed double hull oil tankers at length of 150 m and over carrying oil in bulk. The software’s interface and operation styles feature the typical design of CCS’large structural assessment software (SDP), which is characterized by multiple functions and flexible operation. As one of the newest software developed by CCS, SDP_BC relieves users of the tedious calculation for CSR and provides an advanced approach to the design and check of oil tankers. Feature and functions: 1 Representing the latest requirements of CSR OT; 2 Providing calculation for all main structures, including cargo tank region, bow, stern, machinery space and superstructures; 3 Easy to learn and use; 4 Performing accurate and reliable calculation; 5 Outputting calculation results in a flexible way; 6 Updating with latest CSR.  
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Testing Facility

01/01.1970

NDT Services In 2011, we continued to develop our NDT capability. We successfully developed the testing technologies of PAUT and TPFD to substitute for the traditional radiographic inspection method and thus cut down the testing time on site and improved production efficiency. In order to satisfy the need in craftsmanship and site inspection, we developed specialized scanning devices to ensure the implementation of new testing technology. In this way, the precision has been increased and the manual operation reduced. Several of our scanning devices are the first of its kind in China and has reached the world advanced level. We promoted the application of new NDT technology in ship welding. By adopting the world leading technologies like PAUT and TOFD, we launched NDT supervision and spot check campaigns on structure welding quality of newbuildings to improve the shipyard's welding quality. Far East Fire Testing Lab In accordance with the requirements of IMO FTP Code, Far East Fire Testing Lab is able to provide an array of testing services including non-combustibility test for ship structure materials,fire resistance test for ship structure division, first-resisting door control device, surface flammability test for finish materials,primary deck combustibility test, high-speed ship fire retarding division incombustibility and so on. In addition, Far East Fire Testing Lab, by means of outsourcing and cooperating with other non-marine fire testing labs in China, has started to be able to carry out testing on smoke density and toxicity of burning ship materials. By closely following up new BS and EN standards, we have been actively developing new testing services and provided quality service for our customers in countries and regions like the UK, Australia, Singapore, and Hong Kong. We have also explored a new testing service for fireproofing materials used on warships. Far East Lubricating Oil Testing Center Far East Lubricating Oil Testing Centeris equipped with advanced and sufficient appliances and installations and has mastered mature means of applying lube oil analysis technique into monitoring equipment condition. It has developed nearly one hundred criteria/threshold values and monitors about one hundred ships (propeller shaft condition) at maximum. This research has been started since long and lies at a leading level. Coating Lab Shanghai Coating Lab is the first ballast tank coating testing lab in China that conforms to relevant IMO requirements. The result of PSPC ballast tank coating test and heavy anti-corrosion coating test delivered by the Lab is recognized by 8 classification societies. In 2011, we developed and launched PSPC crude oil tank coating test service and obtained metering certificate issued by Shanghai Bureau of Metrology. Shanghai Coating Lab, with its high-tech and quality service, has become the leader in China in the domain of PSPC test. Wuhan Quality Inspection & Testing Center Founded in 1987 and being a research institution under CCS, Wuhan Quality Inspection & Testing Center for Marine Life-saving Appliances (hereinafter referred to as the Center) mainly engages in testing and science researches, as well as development of rules and regulation for marine life-saving appliances, participates in the tracking and research of the relevant rules and resolutions of International Maritime Organization (IMO) and the establishment of national standards, and is the designated testing agency for country life-saving appliance production licenses. As a third party notary testing organization, the Center conducts testing with regard to marine life-saving appliances and marine fire-fighter’s outfits etc. in accordance with the requirements of IMO, International Standard Organization (ISO), European standards (EN), British standards (BS) and Chinese national standards (GB) and provides internationally recognized test reports to customers at home and abroad and proofs of technology to the principals for obtaining their product approval from the competent authorities.  
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CSR-SDP(BULKER)

01/01.1970

COMPASS-STRUCTURE-CSR-SDP (for BC): Structure design program for bulk carriers (SDP_BC) is developed by CCS in accordance with the latest version of Common Structural Rules for Bulk Carriers (CSR BC). The program is mainly used for the structural design and check for the full length of single or double side skin bulk carriers at length of 90 m and up to less than 350 m for global service. The software’s interface and operation styles feature the typical design of CCS’ large structural assessment software (SDP), which is characterized by multiple functions and flexible operation. As one of the latest research outcomes of CCS, SDP_BC relieves users of tedious calculation for CSR and provides an advanced calculation approach to the design and check of bulk carriers. Feature and functions: 1 Reflecting the latest requirements of CSR BC; 2 Providing calculation for all main structures, including cargo hold region,bow, stern, machinery space and superstructures; 3 User friendly; 4 Performing accurate and reliable calculation; 5 Outputting calculation results in a flexible way; 6 Updating with latest CSR.
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CSR-DSA

01/01.1970

 COMPASS-STRUCTURE-CSR-DSA: Direct structural analysis (DSA) is developed in accordance with IACS Common Structural Rules for bulk carriers and oil tankers and on the basis of MSC.Patran. Due to complicated nature of CSR, traditional manual calculation approach spends great amount of time on load determination, corrosion deduction and result processing. Moreover, direct calculation is greatly increased in CSR due to the addition of more conditions and the introduction of fine mesh and very fine mesh analysis. DSA uses Patran’s PCL language and presents flexible assessment approaches, and hence greatly reduces calculation period in finite element modeling and increases analysis efficiency, to enable engineers to complete FE analysis quickly and accurately. Feature and functions: 1 Having a diversified rich marine profile database; 2 Capable of automatic loading according to the requirements of CSR, and hence avoiding the tedious manual loading process; 3 Capable of automatic boundary constraining; 4 Capable of corrosion deduction; 5 Providing powerful postprocessor approaches including buckling assessment, automatic mesh refining and fatigue calculation, etc; 6 Easy to learn and use; 7 Performing accurate and reliable calculation; 8 Updating with latest CSR.    
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Rules & Guidelines Information

01/01.1970

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Scientific Research on Rules

11/13.2020

The China Classification Society (CCS) is the only professional organization engaged in the ship classification survey business in China and a full member of the International Association of Classification Societies (IACS). CCS formulates classification rules for ships and offshore installations and is entrusted by China MSA to prepare technical regulations for ships and offshore installations. CCS has scientific research information institutions such as the Rules and Technology Center (CCS Shanghai Rules & Research Institute), CCS Wuhan Rules & Research Institute, Offshore Engineering Technology Center, Technology Research and Development Center, Science and Technology Innovation Test Center, and Information Center.Since its establishment, CCS has gradually formed a system of rules and regulations for sea-going vessels (including ocean-going fishing vessels), inland vessels, offshore mobile drilling vessels, fixed platforms, and container ships through the study of international advanced technical standards and the accumulation of experience in the process of plan approval and survey. The system of rules and guidelines for ships covers high-tech ship types such as very large crude carriers (VLCC), very large container ships, very large ore carriers, membrane liquefied natural gas (LNG) carriers, and large vehicle carriers, supporting the development of the shipbuilding industry in China, and promoting the safety of water transport.CCS concentrates its efforts on the research of key technologies for large and high-tech ship types and for offshore engineering, green smart technologies, and new energy application technologies, and has issued standards such as the Rules for Green Eco-ships, Rules for Intelligent Ships, and Rules for Cruise Ships. The rules for the structure of bulk carriers and oil tankers have passed the International Goal-based Ship Construction Standards for Bulk Carriers and Oil Tankers (IMO GBS) audit without defects, and the audit results are the best among the members of the International Association of Classification Societies. Fruitful results have been achieved in the research of key technologies such as intelligent ships/unmanned ships, application of LNG power on water, very large container ships, very large ore ships, LNG carriers, mobile platforms and floating units, reaching the international leading or advanced level. A large number of very large, high-performance, high-value-added ships and offshore mobile platforms have joined CCS. The system of CCS rules and standards and the technical service capabilities are widely accepted by international and domestic industries.CCS continues to increase its influence in the international maritime community, providing strong technical support for the Chinese government to participate in international maritime affairs, safeguard national maritime rights and interests, and support the development of related industries. CCS actively participates in the formulation of international maritime technical standards and submits more than half of the Chinese proposals to the International Maritime Organization on an annual average basis. CCS has played an important role in the formulation of international maritime technical standards including the Ballast Water Management Convention, Hong Kong Convention, Common Structural Rules for Oil Tankers and Bulk Carriers, Energy Efficiency Design Index for new ships, Code on Noise Levels on Board Ships, Polar Code, IGF Code, and asbestos-free thresholds, safeguarding the interests of the country and related industries, and making great contributions to the development of international maritime technology.In the future, CCS will continue to improve its capabilities in scientific and technological innovation and leading development, to comprehensively form a scientific and technological work system with the ability for strong independent innovation, high-level rules and standards, and scientific evaluation and experiment, and fulfil the mission of “safety, environmental protection, and creating value for clients and the society”. For more details, please contact us:Sea Ship: CCS Shanghai Rules & Research Institute, Tel: 021-61089200, E-mail: ccssr@ccs.org.cnRiver Ship: CCS Wuhan Rules & Research Institute, Tel: 027-85822350, E-mail: ccswra@ccs.org.cn Offshore Engineering: Offshore Engineering Technology Center, Tel: 022-62022888, E-mail: ot@ccs.org.cn
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Compass-Rules, specifications calculation system for ocean-going vessels

12/15.2020

Compass-Rules, as an important subsystem of the Compass engineering calculation software system of CCS, is widely used in the fields of ship drawing review, norms and standards research, aided design, as well as specification computation and drawing review computation for shipping safety assessment. The software consists of 30 computation modules in four specialties, which are ship structure, performance, turbine and electrical power. According to the requirements of applicable codes and regulations, it is capable of computing the total strength and local strength of the hull structure, large opening deck strength, integrity stability, damage stability and grain stability, allowable gravity center height, freeboard, loading, oil spill, tonnage, crankshaft strength, gear strength, longitudinal vibration, backlash, torsional vibration, alignment, onshore and on-board short-circuit current, as well as the computation of longitudinal bone fatigue strength of oil tankers, container ships and bulk carriers with the simplified stress analysis method. After years of use by our in-house professionals as well as external design institutions, its practicality, operability, computation accuracy and authoritativeness have been unequivocally affirmed by the industry.Compass-Rules computation system for ocean-going vessels is applicable for computation and verification of specifications in ship stability, hull structure, turbine and electrical specialties, and it consists of 30 calculation modules: Technical support: Hu Tao, phone: 0086-21-61089555, email: hutao@ccs.org.cn.If you have any questions in the use of our software, please do not hesitate to fill out the form "HELPDESK" on the right side of this page, and we will reply as soon as possible.  Software version and download link: VER. 2020 (2020-7-1)
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COMPASS-CSR, common structural rules computation software of China Classification Society

12/15.2020

The software is specially designed for ship structure analysis in accordance with the International Association of Classification Societies’ (IACS) Common Structural Rules (CSR), including descriptive computation and direct finite element calculations and analysis, and it is updated in line with the IACS CSR BC & OT specifications, which will provide strong support for the application of CSR BC & OT specifications in the Chinese shipbuilding industry.The CSR calculation software is suitable for CSR vessels with shipbuilding contracts dated from April 1, 2006 to June 30, 2015, and it includes modules such as Structure Design Program for Bulk Carriers (SDP-BC), Structure Design Program for Oil Tankers (SDP-OT), and direct strength analysis (DSA).COMPASS-HCSR computation software is suitable for CSR ships with construction contracts on or after July 1, 2015, and it includes two modules: the structure design program (SDP) module for descriptive specification verification and the direct strength analysis (DSA) module.Method to obtain the software: 1. Download and print the Computing Software License Agreement;2. Fill in the name and legal person of your organization and affix your seal in the signature area indicated for "Party B" in the Agreement.3. Fill in the form in the attachment according to your needs, leaving the "Registration Code" column blank; 4. Fax the completed Agreement to 0086-10-58112869, and you will receive a registration code once the Agreement is approved. 
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COMPASS Inland 2019, for inland waterway vessels

12/15.2020

I. Software overviewCOMPASS Inland 2019 is a piece of professional computation software for ships independently developed by CCS and it currently includes the following four subsystems to implement hull (body and cabin) modeling as well as hydrostatics, cabin capacity, integrity stability, allowable gravity center height, damage stability, tilt test, total longitudinal strength (combination of total longitudinal bending and long hatch bending and torsion), tonnage, EEDI, and other computation and verification functions:1) Three-dimensional hull modelingThe modeling method of the hull (body and cabin) is upgraded from the traditional offset table method to 3D modeling in a step-wise way "shape line > shape surface > main hull > cabin" as is conventional in the shipbuilding industry, so as to describe the hull and cabin accurately and support 3D hull modeling of any shape, including bulbous bow, multiple stern, convex deck, raised deck, bow thrust, bottom tunnel, etc., suitable for modeling asymmetrical catamarans, combined hulls and other special complex ship types. The 3D visualized interaction ability: the software supports graphic picking, feature point capturing, reverse box selection (any part of graphic object is selected when it falls within the box) and undo/redo, which further improves the convenience and intuitiveness of modeling. Providing command flow for fast modeling: this function is suitable for skillful and advanced users to realize one-click modeling from scratch, especially for fast modeling of the whole ship and modification of master mold ship.Compatible with the conventional offset table: molded lines can be created from the offset table, which is convenient for users who prefer using the offset table to realize rapid modeling and migrating master mold ship data; The offset table can also be output from the 3D hull, which is convenient for the user to check the consistency between the model and the real data of ship. In particular, the ship drawing inspecting institutions speak highly of this function. Supporting reference expression modeling and linkage modification: it is able to use an expression to represent a coordinate point or its coordinate components, for example, #10+100 represents the longitudinal X coordinate of rib #10 offset by 100mm, S1/Z=1 represents the point with Z value of 1 on station line S1, and S1/W1 represents the intersection of station line S1 and waterline W1; Users do not have to memorize or input numerous coordinate values for modeling, thus greatly simplifies data input and ensures the coordinate consistency of curves in different directions at intersections. When the curve (referenced line) in the reference expression is modified, the associated curve will also update by linkage, as shown in the following figure. Support for parameterized rapid modeling of simple cabin: A 3D cabin is intercepted at the hull by specifying X positions at both ends of cabin and feature points at end faces. As shown in the following figure, this modeling approach is completely consistent with the human way of thinking and thus easy to use, especially suitable for simple cabins such as starboard cabin and bilge cabin. Boolean assembly modeling of complex cabin: complex cabins are generated by body-to-body (cabins) Boolean assembly, as shown in the following figure of a stern located fuel tank. This modeling method accords with people's visual cognition and can describe complex cabins intuitively and accurately just like assembling toy building blocks. In addition, general interfaces such as IGES are provided to realize model intercommunication with other software, so that users can make full use of existing data models to improve work efficiency, including the use of this software's models in other software or to use other software's models in this software.2) Stability computation and calibrationThe software realizes computation of hydrostatics, tank capacity curve, complete stability, allowable gravity center height, damage stability and tilt test, which are used for auxiliary design and drawing review of inland waterway and river-sea intermodal ships, and are applicable to all ship types listed in the Technical Rules for Statutory Survey of Inland Waterway Vessels (2011 Edition, 2015 Revision Circular, 2016 Revision Circular, 2018 Revision Circular, 2019 Edition) and the Technical Rules for Statutory Survey of River-Sea Intermodal Ships on Specific Routes (2018), including dry cargo ships, liquid cargo ships, passenger ships, container ships, self-discharging sand ships, dredgers, crane ships, barges, bulk carriers, commercial automobile RORO (Roll on Roll off) vessels. In addition, compared with the conventional slice integration algorithm, our new independently developed 3D algorithm not only improves the computation accuracy, but also gets rid of the limitation of hull shape, and can be applied to 3D hulls of any shape, such as spherical bow, multi-stern, stem-to-stern elevation, convex deck, multi-body, floating dock, combined hull, etc. 3) Calculation of total longitudinal strengthThe thin-walled equal-straight finite beam method is adopted to calculate and check the total longitudinal bending of hull beams and the combined bending and torsion strength of ships with long and large openings. The method is applicable to the ship types listed in the Code for Construction of Steel Inland Waterway Ships (2016 and 2019 Revision Circular) and the Code for Construction of River-Sea Intermodal Ships on Specific Routes (2018).In addition, seamless connections with the stability module is realized by taking hull loads obtained from stability computation as input, thus avoiding repeated input of shared data such as weight, center of gravity and simplifying computational workload.4) Licensing computation and evaluationThe software realizes computation and evaluation of the technical indexes as per applicable codes and regulations required for issuing certificates, such as gross tonnage, net tonnage and EEDI. It is applicable to the ships listed in the Technical Rules for Statutory Survey of Inland Waterway Vessels (2011 Edition, 2015 Revision Circular, 2016 Revision Circular, 2018 Revision Circular, 2019 Edition) and the Code for Inland Waterway Green Ships (2018). In particular, it supports accurate computation with the 3D hull model as input.  II. Suitable customers and benefits The software is suitable for ship design organizations, ship building and repairing organizations, ship survey organizations, maritime organizations, universities, and research institutes. The customers can obtain the following benefits and rights:Accurate and reliable computation of stability, total longitudinal strength, etc., viewing in graphic and table forms, and one-click export of reports;Collaboration between designer and surveyor, which can greatly shorten the overall cycle and improve work efficiency;Standardization of the same hull model according to multiple different versions of specifications, for example, "tracing" of old ships according to the new standard;Ability to run independently without relying on any other application software, real-time technical support through QQ group, mail, telephone and other means.As of June 2020, the software has been applied in more than 300 organizations across the country, including CSSC No. 708, No. 702, and No. 701 Institutes, Wuchang Shipbuilding Industry Group, Guangzhou Shipyard International Company, SDARI, Yangtze River Ship Design Institute, Wuhan University of Technology and other well-known organizations, where it is widely used in ship aided design, drawing inspection, safety assessment, standardized scientific research, teaching and training, etc. Geographically, the users cover 23 provinces and municipalities including Guangdong, Guangxi, Chongqing, Hubei, Hunan, Anhui, Jiangsu, Shanghai, Zhejiang, Fujian, Jiangxi, and Heilongjiang, with ships navigating the Yangtze River, Pearl River, Heilongjiang, Beijing-Hangzhou Canal and other water systems. Compared with the old version of the software before 2016, the 2019 version has advantages in terms of ease of use, data sharing, and model interoperability: 1) Hull modeling has been upgraded from 2D to 3D and provided with multi-level modeling tools, including pickup and capture, command flow, reference expressions, modification linkage, model value table, IGES interface, etc., which greatly improves the modeling intuitiveness, convenience, accuracy, ship model adaptability and model interoperability.(2) The computation function breaks through the hull shape constraints, solves the problem of ship type adaptability, and improves the accuracy of computation.(3) A seamless connection is realized through stability, strength and other related modules, and intelligent assistance provides professional computation parameters input; all those functions, along with data checking, greatly reduce human factor errors and eliminate repeated data entry, making the software more user-friendly and efficient.4) It eliminates the shortcomings of only supporting current standards, integrates the computation calibration for different periods selected, and simplifies software management. It is fully adaptive to the differentiated needs of the industry as to the traceability of old ships.III. Customer service This software adopts a licensing system.Technical support: Chen Zhibiao  zbchen@ccs.org.cn 0086-27-85423516        Chen Qingren  qrchen@ccs.org.cn  0086-27-85865132Marketing work: Cheng Shiyao  sycheng@ccs.org.cn 0086-27-85825842 Online classroom:https://ke.qq.com/course/2273767?taid=8894039753667047&tuin=f5b1c2 COMPASSInland20200821Download
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Ocean-going vessels

12/15.2020

Engineering software for ocean-going vessels includes Compass-CSR, Compass-Rules and a series of other special purpose software.
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Assessment of Carbon Intensity for Ships (EEXI & CII)

02/04.2024

1、Evaluation/pre-verification of existing ships in the fleet for EEXI. Technical and energy efficiency calculation and analysis assessment of ships/fleet, using EEXI guidelines method to calculate and analyze the EEXI pass rate, and conduct comparative analysis with the corresponding ship types in the global fleet.2、Pre-verification of CII for ships/fleet. Operational energy efficiency calculation and analysis assessment of ships, using CII guidelines method to conduct comparative analysis with the baseline of the corresponding ship type.3、Assessment of technology and measures to improve EEXI and CII for fleets/single ships.4、Training.Contact information:CCS Shanghai Rules&Research Institute: 58112065; si@ccs.org.cn
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